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Application to spherical nuclei
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amplitude angular appears approximation assume calculations closed commutation complete condition configurations consider constants contain corresponding coupling course defined definition deformed denotes density depends described determined diagonal diagrams discussed effective eigenvalue energy equation example excitation expansion experimental expression fact factor Fermi field force given gives graphs Green function ground Hamiltonian Hartree-Fock hole important independent integral interaction introduce involving levels matrix elements mean method momentum neutron normal nuclear nuclei nucleons obtain operator orbital pair parameters particle particle-hole Phys possible potential problem projection properties quantity quasi-particle reduced relations relative representation represented respect rotational rules scattering Sect separation shell shown simple single single-particle solution space spherical strength symmetry tensor theory transformation transition two-body vacuum values vector wave functions write written zero